Cookie Privacy Preferences
We utilize essential cookies to ensure our website operates effectively and remains secure. Additionally, we'd like to request your permission to use optional cookies. These are intended to enhance your browsing experience by offering personalized content, displaying advertisements that are relevant to you, and helping us to further refine our website.
Choose "Accept all cookies" to agree to the use of both essential and optional cookies. Alternatively, select "Let me see" to customize your preferences.
Privacy Preference Centre
Our website utilizes cookies to enhance your browsing experience and to present you with content tailored to your preferences on this device and browser. Below, you will find detailed information about the function of cookies, enabling you to make informed choices about which cookies you wish to accept. Please note that disabling certain cookies might impact your user experience on our site. It's important to remember that cookie preferences need to be set individually for each device and browser you use. Clearing your browser's cache may also remove your cookie settings. You have the freedom to modify your cookie preferences at any point in the future.
For a comprehensive understanding of our use of cookies, please refer to our complete cookies policy.
These cookies are needed for the website to work and for us to fulfil our contractual obligations. This means they can't be switched off. They enable essential functionality such as security, accessibility and live chat support. They also help us to detect and prevent fraud. You can set your browser to block or alert you about these cookies, but it means some parts of the site won't work.
These cookies allow us to measure and improve the performance of our site. They help us to know how popular pages are, and to see how visitors move around the site. If you don't allow these cookies, we won't know when you've visited our site, and we won't be able to monitor its performance.
These cookies enable us to provide enhanced functionality and personalisation. They may be set by us or by third party providers whose services we've added to our pages. If you don't allow these cookies, some or all of these services may not work properly.
These cookies collect information about your browsing habits to show you personalised adverts. They may be used to build a profile of your interests and show you relevant adverts on other sites. They don't store directly personal information, but are based on uniquely identifying your browser and internet device. If you don't allow these cookies, the adverts you see will be less relevant.
The 3D‑printing landscape is shifting fast. As multi‑material workflows become mainstream and environmental impact finally enters the conversation, the industry is quietly moving away from high‑waste colour‑swap systems and toward true multi‑tool architectures — systems that physically swap entire toolheads instead of purging kilometres of filament just to change colour. Chris is converting his Hybrid HevORT into one. This isn’t hype; it’s the natural next step in the engineering chain.
The most common multi‑colour printers today rely on filament‑switching units like AMS, MMU, ERCF and similar mechanisms. They’re brilliant for accessibility, but they come with unavoidable limitations: high purge waste, slow transitions, contamination risks and the fundamental bottleneck of forcing every material through a single melt zone. As multi‑material printing expands into engineering polymers, conductive filaments, flexible elastomers, soluble supports and aesthetic colour work, the single‑nozzle paradigm starts to crack. The industry needs something modular, scalable and mechanically robust and multi‑tool changers are the answer.
A multi‑tool changer is a mechanical docking system that allows the printer to pick up and drop off entire toolheads, switching between nozzles, extruders, materials or even functions. Each toolhead maintains its own melt zone, thermal profile and drive system, eliminating purge towers entirely and enabling true multi‑material printing without cross‑contamination. It’s essentially CNC‑style tool changing adapted for high‑speed FDM. The HevORT platform is ideal for this because it’s a rigid CoreXY system with the acceleration, precision and open‑source flexibility needed for repeatable docking and modular expansion..
The environmental impact is the part nobody talks about. Filament‑switching systems generate massive purge waste, while multi‑tool changers generate next to none. Removing purge blocks eliminates wasted filament, wasted energy, wasted print time and wasted landfill mass. If the community is serious about environmentally responsible multi‑material printing, multi‑tool systems are the only scalable path forward.
From an engineering standpoint, multi‑tool changers unlock capabilities that filament‑switching systems simply cannot match. Independent thermal profiles, discrete melt zones for incompatible polymers, kinematic coupling for repeatable alignment, magnetic or mechanical latching interfaces, hot‑swappable extruder modules, dedicated drive‑trains per material class, reduced thermal hysteresis during transitions, zero‑purge workflows, multi‑function capability, modular expansion architecture, tool‑indexed calibration routines and high‑speed CoreXY kinematics all combine to create a platform that is genuinely future‑proof.
Chris will be building the multi‑tool changer system using the Bondtech ecosystem as the foundation for our hybrid HevORT and we’ll be sharing the progress on social media as the project evolves. This is a slow, personal build that will move forward in between our workload, so there won’t be any files released for now. If you’re curious, interested, or just want to follow along with the development, feel free to join us on youtube and watch the project take shape piece by piece.
Change currency